参考文献/References:
[1]MORITA R, SATO Y, MASUDA Y, et al. Defect innon-yellow coloring 3, an a/b hydrolase-fold family protein, causes a stay-green phenotype during leaf senescence in rice.[J] Plant Journal, 2009, 59: 940-952.
[2]何冰,刘玲珑,张文伟,等. 植物叶色突变体[J]. 植物生理学通讯. 2006,42(1):1-9.
[3]王中豪,贺彦,张晓波,等. 水稻白化转绿和穗顶端退化突变体vpa1的遗传分析和基因定位[J]. 中国水稻科学, 2021, 35(1): 19-26.
[4]TAKEUCHI R, KIMURA S, SAOTOME A, et al. Biochemical properties of a plastidial DNA polymerase of rice[J]. Plant Molecular Biology,2007, 64(5): 601-611.
[5]DOGRA V, DUAN J, LEE K P, et al. Impaired PSII proteostasis triggers a UPR-like response in the var2 mutant of Arabidopsis[J]. Journal of Experimental Botany,2019, 70(12): 3075-3088.
[6]XU J, YANG J, WU Z, et al. Identification of a dual-targeted protein belonging to the mitochondrial carrier family that is required for early leaf development in rice[J]. Plant Physiology,2013, 161(4): 2036-2048.
[7]MOCHIZUKI N, BRUSSLAN J A, LARKIN R, et al. Arabidopsis genomes uncoupled 5 (GUN5) mutant reveals the involvement of Mg-chelatase H subunit in plastid-to-nucleus signal transduction[J]. Proceedings of the National Academy of Sciences of the United States of America, 2001, 98(4): 2053-2058.
[8]SU N, HU M L, WU D X, et al. Disruption of a rice pentatricopeptide repeat protein causes a seedling-specific albino phenotype and its utilization to enhance seed purity in hybrid rice production[J]. Plant Physiology, 2012, 159(1): 227-238.
[9]LV Q, XU J, WU P. Ospapst1, a useful mutant for identifying seed purity and authenticity in hybrid rice[J]. Plant Signaling & Behavior,2013, 8(7): e24819.
[10]THANGAPANDIAN R, BOOPATHI N M, YUVARAJA A. Transient albino and revertible to green (TARGreen) rice mutant: simple, affordable and beneficial novel tag for rapid genetic purity testing in rice (Oryza sativa L.)[J]. Genetic Resources and Crop Evolution, 2020, 67:1949-1955.
[11]KUSUMI K, SAKATA C, NAKAMURA T, et al. Plastid protein NUS1 is essential for build the genetic system for early chloroplast development under cold stress conditions[J]. Plant Journal for Cell and Molecular Biology, 2011,68(6):1039-1050.
[12]SUGIMOTO H, KUSUMI K, TOZAWA Y, et al. The virescent-2 mutation inhibits translation of plastid transcripts for the plastid genetic system at an early stage of chloroplast differentiation[J]. Plant and Cell Physiology,2004, 45(8): 985-996.
[13]YOO S C, CHO S H, SUGIMOTO H, et al. Rice Virescent3 and Stripe1 encoding the large and small subunits of ribonucleotide reductase are required for chloroplast biogenesis during early leaf development[J]. Plant Physiology, 2009, 150(1): 388-401.
[14]SUN J, ZHENG T, YU J, et al. TSV, a putative plastidic oxidoreductase, protects rice chloroplasts from cold stress during development by interacting with plastidic thioredoxin Z[J]. The New Phytologist, 2017,251(1):240-255.
[15]NIU M, WANG Y, WANG C, et al. ALR encoding dCMP deaminase is critical for DNA damage repair, cell cycle progression and plant development in rice[J]. Journal of Experimental Botany,2017, 68(21/22): 5773-5786.
[16]XU J, WANG L, ZHOU M Y, et al. Narrow albino leaf 1 is allelic to CHR729, regulates leaf morphogenesis and development by affecting auxin metabolism in rice[J]. Plant Growth Regulation, 2017, 82(1): 175-186.
[17]LIN D, JIANG Q, ZHENG K, et al.Mutation of the rice ASL2 gene encoding plastid ribosomal protein L21 causes chloroplast developmental defects and seedling death[J]. Plant Biology, 2015, 17(3): 599-607.
[18]WANG W Y, DENG C, AI P F, et al. ALM1, encoding a Fe-superoxide dismutase, is critical for rice chloroplast biogenesis and drought stress response[J]. The Crop Journal, 2020,9(5):1018-1029.
[19]LIU X, CAO P H, HUANG Q Q, et al. Disruption of a rice Chloroplast-Targeted gene OsHMBPP causes a seedling-lethal albino phenotype[J]. Rice,2020, 13(1):51-62.
[20] ZENG X Y, TANG R, GUO H R,et al. A naturally occurring conditional albino mutant in rice caused by defects in the plastid-localized OsABCI8 transporter[J]. Plant Molecular Biology, 2017, 94(1/2): 137-148.
[21]HE Y, SHI Y F, ZHANG X B, et al. The OsABCI7 transporter interacts with OsHCF222 to stabilize the thylakoid membrane in rice[J]. Plant Physiology, 2020, 184(1): 283-299.
[22]林添资,孙立亭,龚红兵,等.一个水稻低温移栽白条纹突变体wltt的鉴定和基因定位[J].中国水稻科学, 2019, 33(1): 1-11.
[23]WU Z M, ZHANG X, HE B, et al. A chlorophyll-deficient rice mutant with impaired chlorophyllide esterification in chlorophyll biosynthesis[J]. Plant Physiology, 2007, 145(1): 29-40.
[24]LIVAK K J, SCHMITTGEN T D. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method[J]. Methods,2001, 25(4): 402-408.
[25]SHI Y, CHEN J, LIU W, et al. Genetic analysis and gene mapping of a new rolled-leaf mutant in rice (Oryza sativa L.) [J]. Science China Life Sciences, 2009, 52(9): 885-890.
[26]李君,娄运生,马莉,等. 夜间增温和水分管理耦合对水稻叶片光合作用和荧光特性的影响[J]. 江苏农业学报, 2019,35(3):506-513.
[27]郝正刚,王志恒,魏玉清,等. 外源钙镉处理对甜高粱幼苗叶片光合作用的影响[J]. 江苏农业科学,2019,47(19):75-80.
[28]王锐洁,刘筱,杨淑君,等.氮沉降背景下遮阴对虎耳草生长和光合作用的影响[J].南方农业学报,2019,50(2):330-337.
[29]SANTIS-MACIOSSEK G D, KOFER W, BOCK A, et al. Targeted disruption of the plastid RNA polymerase genes rpoA, B and C1: Molecular biology biochemistry and ultrastructure[J]. Plant Journal, 1999, 18:477-489.
[30]LYU J, WANG Y, LIU L, et al. A putative plastidial adenine nucleotide transporter, BRITTLE1-3, plays an essential role in regulating chloroplast development in rice (Oryza sativa L.) [J]. Journal of Plant Biology,2017, 60(5): 493-505.
[31]KONG W, YU X, CHEN H, et al. The catalytic subunit of magnesium-protoporphyrin IX monomethyl ester cyclase forms a chloroplast complex to regulate chlorophyll biosynthesis in rice[J]. Plant Molecular Biology,2016, 92(1/2): 177-191.
[32]JUNG K H, HUR J, RYU C H, et al. Characterization of a rice chlorophyll-deficient mutant using the T-DNA gene-trap system[J]. Plant & Cell Physiology, 2003, 44: 463-472.
[33]ZHANG H, LI J, YOO J H, et al. Rice Chlorina-1 and Chlorina-9 encode ChlD and ChlI subunits of Mg-chelatase, a key enzyme for chlorophyll synthesis and chloroplast development[J]. Plant Molecular Biology,2006, 62: 325-337.
[34]TADINI L. Molecular and physiological dissection of GUN1 chloroplast-to-nucleus retrograde signaling[M]. Berlin,Germany:Springer,2013.
[35]TERRYM J, SMITH A G. A model for tetrapyrrole synthesis as the primary mechanism for plastid-to-nucleus signaling during chloroplast biogenesis[J]. Frontiers in Plant Science,2013, 4: 14.
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