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III类同源异型结构域-亮氨酸拉链基因家族成员OsHox33的敲低会加速水稻叶片衰老。

Knockdown of OsHox33, a member of the class III homeodomain-leucine zipper gene family, accelerates leaf senescence in rice.

作者信息

Luan WeiJiang, Shen Ao, Jin ZhiPing, Song SuSheng, Li ZhengLong, Sha AiHua

机构信息

College of Life Sciences, Tianjin Key Laboratory of Animal and Plant Resistance, Tianjin Normal University, Tianjin, 300387, China,

出版信息

Sci China Life Sci. 2013 Dec;56(12):1113-23. doi: 10.1007/s11427-013-4565-2. Epub 2013 Dec 5.

DOI:10.1007/s11427-013-4565-2
PMID:24302292
Abstract

The class III homeodomain-leucine zipper (HD-Zip III) gene family plays important roles in plant growth and development, including regulation of apical embryo patterning, embryonic shoot meristem formation, leaf polarity, vascular development, and meristem function, with a particularly crucial function in leaf development. Although HD-Zip III members are highly conserved in land plants, previous studies, such as genetic analyses based on multiple mutants in Arabidopsis and other plants, suggest that various HD-Zip III family genes have evolved with distinct functions and pleiotropic effects on plant growth and development. In this study, we analyzed a HD-Zip III member, OsHox33, and demonstrated that it plays an important role in age-dependent leaf senescence in rice. We constructed two specific RNAi vectors derived from the 5'-end region and 3'-UTR of OsHox33 to knockdown its expression. Transgenic plants harboring either RNAi construct displayed similar phenotypes of precocious leaf senescence symptoms, suggesting that knockdown of OsHox33 accelerates leaf senescence in rice. pOsHox33::GUS fusion expression and RT-PCR revealed that OsHox33 is highly expressed in young organs, especially in young meristems such as shoot apical meristems, intercalary meristems, and young callus. In addition, real-time PCR indicated that OsHox33 was more highly expressed in young leaves than in old leaves. To further investigate OsHox33 function, we analyzed chloroplast ultrastructure in different-aged leaves of RNAi plants, and found that OsHox33 knockdown accelerated chloroplast degradation, which is consistent with RNAi phenotypes. Finally, real-time PCR studies showed that OsHox33 can regulate the expression of GS1 and GS2, two senescence-associated genes. Taken together, the work presented here provides new insights into the function of HD-Zip III members in plants.

摘要

III类同源异型域-亮氨酸拉链(HD-Zip III)基因家族在植物生长发育中发挥着重要作用,包括调控顶端胚胎模式形成、胚胎茎尖分生组织形成、叶片极性、维管发育和分生组织功能,在叶片发育中具有尤为关键的作用。尽管HD-Zip III成员在陆地植物中高度保守,但先前的研究,如基于拟南芥和其他植物多个突变体的遗传分析表明,不同的HD-Zip III家族基因在进化过程中具有不同的功能以及对植物生长发育的多效性影响。在本研究中,我们分析了一个HD-Zip III成员OsHox33,并证明它在水稻年龄依赖性叶片衰老中发挥重要作用。我们构建了两个源自OsHox33 5'-端区域和3'-UTR的特异性RNAi载体,以敲低其表达。携带任一RNAi构建体的转基因植物均表现出类似的早熟叶片衰老症状表型,表明敲低OsHox33会加速水稻叶片衰老。pOsHox33::GUS融合表达和RT-PCR显示,OsHox33在幼嫩器官中高度表达,尤其是在茎尖分生组织、居间分生组织和幼嫩愈伤组织等幼嫩分生组织中。此外,实时PCR表明,OsHox33在幼叶中的表达高于老叶。为了进一步研究OsHox33的功能,我们分析了RNAi植物不同年龄叶片的叶绿体超微结构,发现敲低OsHox33会加速叶绿体降解,这与RNAi表型一致。最后,实时PCR研究表明,OsHox33可以调控两个衰老相关基因GS1和GS2的表达。综上所述,本文的工作为HD-Zip III成员在植物中的功能提供了新的见解。

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